Gauri Samiran Sona, Mandal Santi M, Mondal Keshab C, Dey Satyahari, Pati Bikas R
Department of Microbiology, Vidyasagar University, Midnapore 721 102, WB, India.
Bioresour Technol. 2009 Sep;100(18):4240-3. doi: 10.1016/j.biortech.2009.03.064. Epub 2009 Apr 28.
A strain was selected by its highest extracellular polysaccharide (EPS) production ability compare to other isolates from the same rhizospheric soil. The selected strain was identified by 16S rDNA sequencing and designated as SSB81. Phylogenetic analysis of the gene sequence showed its close relatedness with Azotobacter vinelandii and Azotobacter salinestris. Maximum EPS (2.52 g l(-1)) was recovered when the basal medium was supplemented with glucose (2.0%), riboflavin (1 mg l(-1)) and casamino acid (0.2%). The EPS showed a stable viscosity level at acidic pH (3.0-6.5) and the pyrolysis temperature was found to be at 116.73 degrees C with an enthalpy (DeltaH) of 1330.72 J g(-1). MALDI TOF mass spectrometric result suggests that polymer contained Hex(5)Pent(3) as oligomeric building subunit. SEM studies revealed that the polymer had a porous structure with small pore size distribution indicating the compactness of the polymer. This novel EPS may find possible application as a polymer for environmental bioremediation and biotechnological processes.
与来自同一根际土壤的其他分离株相比,根据其最高的胞外多糖(EPS)产生能力选择了一个菌株。通过16S rDNA测序对所选菌株进行鉴定,并将其命名为SSB81。基因序列的系统发育分析表明,它与维涅兰德固氮菌和盐生固氮菌密切相关。当基础培养基添加葡萄糖(2.0%)、核黄素(1 mg l(-1))和酪蛋白氨基酸(0.2%)时,可回收最大EPS(2.52 g l(-1))。EPS在酸性pH值(3.0 - 6.5)下显示出稳定的粘度水平,热解温度为116.73℃,焓(ΔH)为1330.72 J g(-1)。基质辅助激光解吸电离飞行时间质谱结果表明,该聚合物含有Hex(5)Pent(3)作为寡聚结构亚基。扫描电子显微镜研究表明,该聚合物具有多孔结构,孔径分布较小,表明聚合物的致密性。这种新型EPS可能作为一种聚合物应用于环境生物修复和生物技术过程。